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Biomedical subjects

H Shima

Publications and source records attributed to H Shima.

At least 55 records · Page 3Linked to original sources

Molecular analysis of familial androgen insensitivity syndrome due to replacement of glutamic acid 802 by lysine.

We studied a Japanese family presenting at least two cases of complete androgen insensitivity syndrome (CAIS) and negative androgen receptor binding. The index subject showed a 46, XY karyotype and a complete female phenotype. For the purpose of further diagnosis and genetic counseling, molecular analysis of the androgen receptor (AR) gene was performed. Direct sequencing of the AR gene identified a mutation at nucleotide 2935 (A-->G). This replacement was a novel missense mutation, resulting in the substitution of glutamic acid 802 by lysine which deleted a recognition site for EcoRI in exon 6 of the AR gene. We identified another affected individual, using chromosome and molecular analysis of the AR gene at exon 6. Furthermore, although heterozygote carriers could not be identified on clinical grounds, molecular identification of healthy individuals and heterozygote carriers in the family members provided definitive information for genetic counseling. We believe that the molecular analysis of familial CAIS is very informative for both the affected individuals and other family members.

Adolescent↗

Administration of antenatal glucocorticoids upregulates peptide growth factor gene expression in nitrofen-induced congenital diaphragmatic hernia in rats.

BACKGROUND/PURPOSE: There is increasing evidence to suggest that various growth factors play a crucial role in fetal lung growth and morphogenesis. An array of peptide growth factors regulate cell proliferation, differentiation, and various other cell functions in the developing lung. The aim of this study was to investigate the effect of antenatal glucocorticoids administration on gene expression of basic fibroblast growth factor (bFGF), platelet-derived growth factor (PDGF) and transforming growth factor (TGF)-beta1 in nitrofen-induced congenital diaphragmatic hernia (CDH) in rats. METHODS: A CDH model was induced in pregnant rats after administration of nitrofen. Dexamethasone (Dex; 0.25 mg/kg) was given intraperitoneally on day 18.5 and 19.5 of gestation (term, day 22). Cesarean section was performed on day 21 of gestation. mRNA was extracted from left lung and reverse transcription-polymerase chain reaction (RT-PCR) was performed to evaluate mRNA expression of each growth factors. Relative levels of mRNA were expressed as a ratio of the band density divided by that of beta-actin, a housekeeping gene known to be expressed at a constant level. RESULTS: Relative mRNA levels of bFGF and TGF-beta1 were decreased significantly in CDH lung compared with controls. Antenatal Dex treatment up-regulated gene expression of bFGF, PDGF, and TGF-beta1 in the hypoplastic CDH lung. CONCLUSIONS: The authors' findings suggest that decreased gene expression of bFGF, PDGF, and TGF-beta1 in the CDH lung may suppress lung growth and development. Increased gene expression of bFGF, PDGF, and TGF-beta1 in Dex-treated lung suggests that antenatal glucocorticoid administration may accelerate fetal lung growth by up-regulating these growth factors.

Animals↗

Antenatal dexamethasone enhances endothelin receptorB expression in hypoplastic lung in nitrofen-induced diaphragmatic hernia in rats.

BACKGROUND/PURPOSE: The hypoplastic lung and persistent pulmonary hypertension (PPH) are the principle causes of high mortality and morbidity in infants with congenital diaphragmatic hernia (CDH). Endothelin-1 (ET-1), which is produced by vascular endothelial cells and some leukocytes, plays a key role in modulating pulmonary vascular tone in PPH. Two different receptors (ET(A) and ET(B)) for ET-1 have been characterized. Binding of ET-1 to ET(A), which is present on smooth muscle cells in fetal lung, results in vasoconstriction. However, binding of ET-1 to ET(B), which is present on endothelial cells results in vasodilation mediated by endogenous nitric oxide. Antenatal glucocorticoid therapy has been shown to prevent abnormal pulmonary arterial structural changes in animal model with CDH. The aim of this study was to investigate the effect of antenatal glucocorticoid administration on ET-1 system in nitrofen-induced CDH hypoplastic lung in rats. METHODS: A CDH model was induced in pregnant rats after administration of nitrofen on day 9.5 of gestation. Dexamethasone (Dex) was given intraperitoneally on days 18.5 and 19.5 of gestation. Cesarean section was performed on day 21 of gestation. Rat ET-1 protein expression was measured in solubilized lung tissue extracts, by sandwich type enzyme-linked immunosorbent assay (ELISA) analysis. Reverse transcription polymerase chain reaction was performed to evaluate the relative amount of ET-1, ET(A), and ET(B) mRNA expression. RESULTS: The ET-1 protein and mRNA expression of ET-1 and both receptors were increased significantly in CDH lung compared with controls. Although there was no significant difference in ET(A) mRNA expression between CDH lung with Dex treatment and without Dex treatment, ET(B) mRNA expression was elevated significantly in CDH lung with Dex treatment compared with CDH lung without Dex treatment. CONCLUSION: These findings suggest that antenatal glucocorticoid therapy may modulate pulmonary vascular tone in CDH hypoplastic lung by selectively upregulating local expression of ET(B).

Animals↗

Antenatal dexamethasone enhances surfactant protein synthesis in the hypoplastic lung of nitrofen-induced diaphragmatic hernia in rats.

BACKGROUND/PURPOSE: Pulmonary hypoplasia is one of the main causes for the high mortality rate in patients with congenital diaphragmatic hernia (CDH). The expression of surfactant protein A in the hypoplastic CDH lung is reduced, and its concentration is decreased in the amniotic fluid of pregnancies complicated by CDH. In a CDH experimental model, prenatal glucocorticoid treatment has proved its efficacy in correcting the parameters of pulmonary biochemical and morphologic immaturity. The aim of this study was to investigate whether maternal administration of dexamethasone has any effect on the expression of surfactant protein A and surfactant protein B in nitrofen-induced experimental CDH rat model. METHODS: CDH was induced in pregnant rats after administration of 100 mg of nitrofen on day 9.5 of gestation (term, 22 days). Dexamethasone (Dex, 0.25 mg/kg) was given by intraperitoneal injection on days 18.5 and 19.5 of gestation. Cesarean section was performed on day 21 of gestation. The fetuses were divided into 3 groups: group I, control (n = 16); group II, nitrofen-induced CDH (n = 16); group III, nitrofen-induced CDH with antenatal Dex treatment (n = 16). Indirect immunohistochemistry was performed using alkaline-phosphatase-coagulated streptavidin using anti-SP-A and anti-SP-B polyclonal antibodies. Reverse transcription polymerase chain reaction (RT-PCR) was performed to evaluate relative amount of SP-A and SP-B mRNA expression. RESULTS: In the CDH lung (group II) we observed a markedly reduced number of type II pneumocytes positive for SP-A, and SP-B was increased to a level close to that of the control group. The relative amount of SP-A and SP-B was reduced significantly in group II compared with controls (P < .05) and significantly increased in group III compared with group II animals (P < .01). CONCLUSION: These results suggest that antenatal glucocorticoid treatment increases the production of surfactant proteins in the CDH hypoplastic lung.

Animals↗

Glial-derived growth factor signaling pathway in infantile hypertrophic pyloric stenosis.

BACKGROUND/PURPOSE: Glial-derived growth factor (GDNF), which is the ligand of RET is reported to be essential for the development of enteric nervous system. A GDNF knockout mouse model has shown that the gastric region is a critical passing site between GDNF-RET-independent neuroblasts (colonizing the esophagus) and GDNF-RET-dependent neuroblasts (colonizing the small and large bowel). The earliest GDNF site of production is the mesenchyme and the outer smooth muscle cell (SMC) layer of the developing bowel. In the mature gastrointestinal tract the presence of GDNF is restricted to enteric glial cells. The aim of this study was to investigate the expression of GDNF and RET in infantile hypertrophic pyloric stenosis (IHPS). METHODS: Full-thickness muscle biopsy specimens were obtained from 8 IHPS patients at pyloromyotomy and from 8 age-matched controls without gastrointestinal disease. Indirect immunohistochemistry was performed using avidin-biotin-peroxidase complex method with anti-GDNF and anti-RET antibodies. Quantitative analysis was performed using sandwich-type enzyme-linked immunosorbent assay (ELISA) for GDNF. RESULTS: GDNF- and RET-positive nerve fibers were absent or markedly reduced in IHPS compared with controls. GDNF was expressed strongly by smooth muscle cells of both muscular layers in IHPS, whereas no GDNF expression was detected in pyloric muscle of controls. The quantity of total GDNF in IHPS was significantly higher than in controls (P < .01). CONCLUSIONS: The lack or markedly decreased number of GDNF-positive nerve fibers in IHPS supports the hypothesis of a selective immaturity of the enteric glia in the muscular layers in IHPS. The strong expression of GDNF in smooth muscle cells in IHPS and the increased levels of GDNF in IHPS suggest a compensatory mechanism by which the smooth muscle cells continue to produce GDNF until maturation of the enteric glial cells occurs.

Drosophila Proteins↗

Abnormal pulmonary accumulation of indium-111 chloride in pneumocystis carinii pneumonia as detected by bone marrow scintigraphy.

PURPOSE: Unusual pulmonary uptake of In-111 chloride in a patient with Pneumocystis carinii pneumonia and autoimmune hepatitis is described. METHOD: In-111 chloride bone marrow scintigraphy was performed to evaluate the bone marrow activity associated with pancytopenia in a 56-year-old woman with autoimmune hepatitis. RESULTS: An In-111 chloride bone marrow scan showed increased pulmonary uptake predominantly in both upper lung fields. P. carinii pneumonia was seen to be developing as an immunocompromised complication after treatment for autoimmune hepatitis. CONCLUSION: When In-111 chloride bone marrow scintigraphy shows increased uptake in the lungs of immunocompromised patients, a combined opportunistic inflammatory disease such as P. carinii pneumonia should be considered in the diagnosis.

Bone Marrow↗

Expression and comparative chromosomal mapping of MKP-5 genes DUSP10/Dusp10.

We have isolated a mouse cDNA for a novel MAPK phosphatase, designated as MKP-5. Two MKP-5 mRNA transcripts of 3.5 kb and 2.7 kb were detected. The 3.5-kb transcript was expressed in almost all the tissues examined, and was particularly abundant in cerebellum, skeletal muscle, and bone marrow. On the other hand, the 2.7-kb transcript was specifically and highly expressed in testis. The MKP-5 genes (DUSP10/Dusp10) were localized to chr 1q41, Chr 1H5 and chr 13q26 in human, mouse and rat, respectively. They were mapped in regions where conserved linkage homology has been identified among the three species.

Amino Acid Sequence↗

Increased local synthesis of epidermal growth factors in infantile hypertrophic pyloric stenosis.

Infantile hypertrophic pyloric stenosis (IHPS) is characterized by hypertrophy of the pyloric muscle. The growth of smooth muscle cells is regulated by several growth factors. Epidermal growth factor (EGF) and heparin-binding EGF-like growth factor are potent mitogens for smooth muscle cells. In the present study, we investigated immunohistochemical localization of EGF and EGF-related peptides and EGF mRNA expression in pyloric smooth muscle cells to determine whether the EGF family is involved in the process of pyloric muscle hypertrophy in IHPS. Pyloric muscle biopsy specimens were obtained at the time of pyloromyotomy from 10 patients with IHPS. Control material included 10 pyloric muscle specimens taken at autopsy from age-matched cases without evidence of gastrointestinal disease. Indirect immunohistochemistry was performed using the avidin-biotin-peroxidase complex method with anti-EGF, anti-EGF receptor, and anti-heparin-binding EGF-like growth factor antibody. In situ hybridization was performed using digoxigenin-labeled EGF-specific oligonucleotide probe. The pattern of immunoreactivity in pyloric muscle with EGF, EGF receptor, and heparin-binding EGF-like growth factor was similar in all specimens. There was a marked increase in EGF, EGF receptor, and heparin-binding EGF-like growth factor immunoreactivity and EGF mRNA expression in smooth muscle cells in pyloric circular and longitudinal muscle from patients with IHPS compared with control specimens. These data suggest that the upregulated local synthesis of EGF and EGF-related peptides in pyloric muscle may play a critical role in the development of pyloric muscle hypertrophy in IHPS.

Biopsy↗

Antenatal dexamethasone administration increases fetal lung DNA synthesis and RNA and protein content in nitrofen-induced congenital diaphragmatic hernia in rats.

Antenatal glucocorticoids treatment has been shown to correct pulmonary immaturity. The thymidine analog bromodeoxyuridine (BrdU) is incorporated into S-phase cells and used as a marker of DNA synthesis. In this study, we investigated the effect of antenatal glucocorticoid administration on DNA synthesis and RNA and protein content in nitrofen-induced congenital diaphragmatic hernia (CDH) in rats to better understand the effect of antenatal glucocorticoids on CDH lung. The CDH model was induced in pregnant rats using nitrofen. Dexamethasone (0.25 mg/kg) was given on d 18.5 and 19.5 of gestation (term = 22 d). BrdU was administered 1 h before fetuses were killed on d 21, and detected by immunohistochemistry. DNA synthesis was evaluated by percentage of BrdU-incorporated nuclei (BrdU labeling index). Total RNA and soluble protein were extracted from another set of left lungs to measure RNA and protein content. BrdU labeling index and total RNA content were significantly decreased in CDH lung compared with control rats. Antenatal dexamethasone treatment significantly increased BrdU labeling index and RNA and protein content in the left CDH lung. Our findings of decreased DNA synthesis and decreased RNA and protein content in CDH lung suggest that lung growth and development are suppressed in hypoplastic CDH lung. Increased DNA synthesis and increased RNA and protein content in dexamethasone-treated CDH lung suggest that antenatal glucocorticoids may accelerate fetal lung growth and development in CDH.

Animals↗

Broad specificity in binding of NIPP-1, nuclear inhibitor of protein phosphatase-1, to PP1 isoforms in vivo.

Protein phosphatase type-1 (PP1), one of the most abundant Ser/Thr protein phosphatases, plays a central role in the regulation of various cell functions. Almost all the PP1 molecules exist as holoenzymes in vivo consisting of a catalytic subunit (PP1C) and a variable regulatory subunit that regulates substrate specificity and/or subcellular localization. In order to clarify fine regulation of PP1, we overexpressed a nuclear inhibitor of PP1 (NIPP-1) in a Flag-tagged form in mammalian cells. The Flag-tagged NIPP-1 was found to be immunoprecipitated with three isoforms of PP1C, namely, PP1alpha, PP1gamma1, and PP1delta with a similar efficiency, suggesting that NIPP-1 makes a complex with the PP1C through the region conserved among the three isoforms. These results suggested that NIPP-1 can be involved in the regulation of various PP1 holoenzymes in vivo.

Animals↗

Increased expression of NIPP-1 mRNA correlates positively with malignant phenotype in rat hepatomas.

In order to elucidate an involvement of protein phosphatase type 1 (PP1) in the malignant transformation, we have isolated rat cDNA for NIPP-1, a nuclear inhibitor for PP1. Rat NIPP-1 protein conserved the PP1 binding domain and the nuclear targeting sequence. The mRNA was ubiquitously expressed with the highest expression in bone marrow and thymus. The rat NIPP1 mRNA levels were slightly, if at all, increased in some primary hepatomas, and significantly increased in rat ascites hepatomas. The levels of NIPP-1 mRNA were closely correlated with malignant phenotype of rat ascites hepatomas, suggesting that NIPP-1 is tightly linked to malignant phenotype in hepatomas.

Amino Acid Sequence↗

Expression in hepatomas and chromosomal localization of rat protein phosphatase 5 gene.

The serine/threonine protein phosphatase type 5 (PP5) gene expression was ubiquitously observed among all the tissues examined, but being at the lowest level in the liver. The levels of PP5 mRNA were markedly elevated in rat highly malignant ascites hepatomas, while those in several rat primary hepatomas were slightly increased and those in the regenerating livers were not elevated at all compared to the control liver. The PP5 gene was mapped to rat chromosome 1q22.1. This region has been identified to have linkage homology among human, mouse and rat, and is known to be associated with several tumor types. Taken together, the present results strongly suggest important roles of PP5 in tumorigenesis.

Animals↗

Molecular cloning and characterization of a novel dual-specificity protein phosphatase possibly involved in spermatogenesis.

Dual-specificity protein phosphatases (DSPs) play roles in the regulation of mitogenic signal transduction for extracellular stimulation and the cell cycle. In the present study, we identified a novel DSP, termed TMDP (testis- and skeletal-muscle-specific DSP). Nucleotide sequence analysis of TMDP cDNA indicated that the open reading frame of 597 bp encodes a protein of 198 amino acid residues with a predicted molecular mass of 22.5 kDa. The deduced amino acid sequence contains a motif for a conserved catalytic domain of DSPs and shows highest similarity to human Vaccinia HI-related phosphatase (45.5% identity) but low homology to the mitogen-activated protein kinase phosphatase and CDC25 subfamilies of DSPs. Recombinant TMDP protein exhibited intrinsic phosphatase activity towards both phospho-seryl/threonyl and -tyrosyl residues of myelin basic protein, with similar specific activities in vitro. Northern-blot analysis revealed that TMDP is most abundantly expressed in the testis. The expression in the testis is characterized as follows: (i) TMDP mRNA first appeared 3 weeks after birth, corresponding to the time that meiosis begins; (ii) TMDP mRNA was abundant in fractionated spermatocytes and round spermatids; and (iii) hybridization in situ showed that the TMDP mRNA is localized in spermatocytes and/or spermatids in seminiferous tubules. These data demonstrate that TMDP is a novel DSP abundantly expressed in the testis and suggest that TMDP may be involved in the regulation of meiosis and/or differentiation of testicular germ cells during spermatogenesis.

Amino Acid Sequence↗

The spiroketals containing a benzyloxymethyl moiety at C8 position showed the most potent apoptosis-inducing activity.

The spiroketals containing a benzyloxymethyl moiety at the C8 position showed the most potent apoptosis-inducing activity, whereas its analogous compounds lacking any substituent at C8 or possessing ones other than the benzyloxymethyl moiety at C8 were all much less active. These results strongly suggest an important role of the benzyloxymethyl moiety linked to the C8 oxygen atom.

Apoptosis↗

Role of the 78-kDa glucose-regulated protein as an activity modulator of protein phosphatase1gamma2.

We have previously found the 78-kDa glucose-regulated protein (Grp78) to be a subunit of protein phosphatase1(PP1)gamma2. To determine the role of Grp78 in PP1gamma2 holoenzyme, we compared the two forms of this enzyme, PP1gamma2 holoenzyme containing Grp78 and Grp78-dissociated PP1gamma2 in rat testes in terms of their kinetic constants and sensitivities to inhibitors of this enzyme. The enzymatic activity of the Grp78-dissociated enzyme was much lower at whole range of concentrations of a substrate (phosphorylase a) than that of the holoenzyme; the Km value was about ten-fold higher in Grp78-dissociated enzyme than in holoenzyme, while the Vmax was similar. IC50s of the Grp78-dissociated enzyme for three inhibitors (microcystin-LR, inhibitor-2, and okadaic acid) were more than ten-fold higher than those of the holoenzyme. These results indicate that the Grp78 subunit modulates the activity of PP1gamma2 through its actions to control the binding of substrates or inhibitors to PP1gamma2.

Animals↗

Effect of antenatal glucocorticoid administration on insulin-like growth factor I and II levels in hypoplastic lung in nitrofen-induced congenital diaphragmatic hernia in rats.

There is increasing evidence to suggest that insulin-like growth factors (IGF) I and II play a crucial role in fetal lung development. Expression of IGF-I and II has been demonstrated to be predominant during fetal life and decreases prior to birth. Antenatal glucocorticoids are reported to improve lung immaturity. The aim of this study was to investigate the effect of antenatal glucocorticoid administration on IGF-I and II expression in nitrofen-induced congenital diaphragmatic hernia (CDH) in rats. A CDH model was induced in pregnant rats following administration of 100 mg nitrofen on day 9.5 of gestation (term = 22 days). Dexamethasone (0.25 mg/kg) was given intraperitoneally on days 18.5 and 19.5 of gestation. Cesarean section was performed on day 21. The fetuses were divided into three groups: I, normal controls; II, nitrofen-induced CDH; and III, nitrogen-induced CDH with antenatal dexamethasone treatment. mRNA was extracted from whole lung and a reverse transcription-polymerase chain reaction (RT-PCR) was performed to evaluate the relative amounts of IGF I and II mRNA. Levels of mRNA were expressed as a ratio of the band density divided by that of beta-actin, a housekeeping gene known to be expressed at a constant level. Immunohistochemistry using anti-rat IGF I and II antibody was also performed in each group. Levels of IGF I mRNA were significantly increased in group II (0.50 +/- 0.08) compared to group I (0.34 +/- 0.10) or group III (0.32 +/- 0.06) (P < 0.05). Levels of IGF II mRNA were also significantly increased in group II (0.95 +/- 0.20) compared to group I (0.42 +/- 0.07) or group III (0. 31 +/- 0.09) (P < 0.05). Strong IGF I and II expression was observed in the hypoplastic CDH lung (group II), mainly in the bronchiolar epithelium. IGF I and II expression in group I and III lungs was either absent or weak. The finding of significant reductions in IGF I and II mRNA and protein levels in dexamethasone-treated CDH lung suggest that dexamethasone may accelerate the fetal stage of lung development.

Animals↗

Increased expression of transforming growth factor-alpha in infantile hypertrophic pyloric stenosis.

Infantile hypertrophic pyloric stenosis (IHPS) is characterized by hypertrophy of the pyloric muscle. The growth of smooth-muscle cells (SMCs) is regulated by several growth factors. Transforming growth factor-alpha (TGF-alpha) is a growth-regulatory peptide found in a wide range of embryonic and adult tissues. It has been recognized that TGF-alpha has growth-promoting effects in vascular and visceral SMCs. The aim of this study was to investigate whether TGF-alpha plays a role in the pyloric-muscle hypertrophy in IHPS. Full-thickness pyloric-muscle biopsy specimens were obtained at the time of pyloromyotomy from 10 IHPS patients (age range 24-76 days). Age-matched control material included 10 pyloric-muscle specimens taken at autopsy in patients without evidence of gastrointestinal disease. Indirect immunohistochemistry was performed using the ABC method with anti-TGF-alpha polyclonal antibody. In-situ hybridization was performed using a digoxigenin-labelled, TGF-alpha-specific oligonucleotide probe. There was a marked increase in TGF-alpha immunoreactivity and messenger RNA (mRNA) expression in SMCs in pyloric circular and longitudinal muscle in IHPS specimens compared to controls. The increased expression of TGF-alpha mRNA together with increased TGF-alpha immunoreactivity in IHPS suggests increased local synthesis of TGF-alpha by pyloric SMCs, causing pyloric-muscle hypertrophy.

Biopsy↗